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Negative Interplay between Biofilm Formation and Competence in the Environmental Strains of Bacillus subtilis

机译:生物膜形成与枯草芽孢杆菌环境菌株的能力之间的负相互作用

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摘要

Environmental strains of the soil bacterium Bacillus subtilis have valuable applications in agriculture, industry, and biotechnology; however, environmental strains are genetically less accessible. This reduced accessibility is in sharp contrast to laboratory strains, which are well known for their natural competence, and a limitation in their applications. In this study, we observed that robust biofilm formation by environmental strains of B. subtilis greatly reduced the frequency of competent cells in the biofilm. By using model strain 3610, we revealed a cross-pathway regulation that allows biofilm matrix producers and competence-developing cells to undergo mutually exclusive cell differentiation. We further demonstrated that the competence activator ComK represses the key biofilm regulatory gene sinI by directly binding to the sinI promoter, thus blocking competent cells from simultaneously becoming matrix producers. In parallel, the biofilm activator SlrR represses competence through three distinct mechanisms involving both genetic regulation and cell morphological changes. Finally, we discuss the potential implications of limiting competence in a bacterial biofilm. IMPORTANCE The soil bacterium Bacillus subtilis can form robust biofilms, which are important for its survival in the environment. B. subtilis also exhibits natural competence. By investigating competence development in B. subtilis in situ during biofilm formation, we reveal that robust biofilm formation often greatly reduces the frequency of competent cells within the biofilm. We then characterize a cross-pathway regulation that allows cells in these two developmental events to undergo mutually exclusive cell differentiation during biofilm formation. Finally, we discuss potential biological implications of limiting competence in a bacterial biofilm.
机译:枯草芽孢杆菌的环境菌株在农业,工业和生物技术中具有有价值的应用;但是,环境菌株是遗传上不均匀的。这种可加工可达性与实验室菌株呈现鲜明对比,这对于他们的自然能力是众所周知的,以及它们的应用中的限制。在这项研究中,我们观察到B.枯草芽孢杆菌的环境菌株的鲁棒生物膜形成大大降低了生物膜中称重量细胞的频率。通过使用模型应变3610,我们揭示了一种交叉途径调节,其允许生物膜基质生产者和能力显影细胞进行相互排斥的细胞分化。我们进一步证明,能力激活剂Comk通过直接与Sini启动子直接结合来压制关键的生物膜调节基因Sini,从而阻止珍级细胞同时成为基质生产商。并行地,生物膜活化剂SLRR通过三种不同机制抑制了涉及遗传调节和细胞形态变化的三种不同机制的能力。最后,我们讨论了限制细菌生物膜中的能力的潜在影响。重要性土壤细菌枯草芽孢杆菌可以形成鲁棒生物膜,这对于其在环境中的生存很重要。 B.枯草芽孢杆菌也表现出自然能力。通过在生物膜形成期间调查枯草芽孢杆菌的竞争力发展,我们揭示了强大的生物膜形成往往大大降低了生物膜内称重量细胞的频率。然后,我们表征了交叉途径调节,其允许在这两个发育事件中的细胞在生物膜形成期间进行相互排斥的细胞分化。最后,我们讨论了细菌生物膜中限制能力的潜在生物学意义。

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